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Can up- and down-conversion and multi-exciton generation improve photovoltaics?

机译:上下转换和多激子发电能改善光伏发电吗?

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摘要

Photon up-conversion (UC) and photon-induced multiple-exciton generation (MEG) are proposed directions that are of increasing interest for improving photovoltaic (PV) conversion efficiencies via "photon (or light) management". Straightforward analysis of these approaches for non-concentrated single-junction cells in the detailed balance limit yields a theoretical PV conversion limit of 49%, instead of 31% without UC and MEG. With what we estimate to be optimistic, maximal realistic efficiencies (25% for UC; 70% for MEG) this limit becomes <40%, i.e., similar to 1.25 times the theoretical efficiency of conventional single-band gap cells. While this result does not detract from the fascinating fundamental scientific challenge to make UC and MEG simple and cheap ways to improve PV, such reality checks should be considered when evaluating the short-term promises of these and other options, such as spectral splitting and tandem arrangements. (C) 2008 Elsevier B.V. All rights reserved.
机译:光子上转换(UC)和光子诱导的多激子产生(MEG)是提出的方向,其对于通过“光子(或光)管理”来提高光伏(PV)转换效率越来越感兴趣。在详细的平衡限制中对非集中式单结电池的这些方法进行简单分析,得出的理论PV转换限制为49%,而不是没有UC和MEG时为31%。据我们估计是乐观的,最大的实际效率(UC为25%; MEG为70%),该限制变为<40%,即类似于传统单带隙单元理论效率的1.25倍。尽管此结果并未降低使UC和MEG成为简单且廉价的方法来提高PV的引人入胜的基础科学挑战,但在评估这些及其他选择的短期前景(例如频谱拆分和串联)时,应考虑进行此类现实检查。安排。 (C)2008 Elsevier B.V.保留所有权利。

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